COMMUNICATION DEVICE FOR TRANSMITTING INFORMATION FROM A MEDICAMENT DELIVERY DEVICE
20220265935 · 2022-08-25
Inventors
Cpc classification
A61M5/326
HUMAN NECESSITIES
A61M2205/6009
HUMAN NECESSITIES
A61M5/31583
HUMAN NECESSITIES
A61M2005/2013
HUMAN NECESSITIES
A61M2205/3375
HUMAN NECESSITIES
A61M2005/3125
HUMAN NECESSITIES
A61M5/24
HUMAN NECESSITIES
A61M5/3157
HUMAN NECESSITIES
A61M5/2033
HUMAN NECESSITIES
A61M2205/6027
HUMAN NECESSITIES
A61M5/3204
HUMAN NECESSITIES
International classification
A61M5/315
HUMAN NECESSITIES
A61M5/20
HUMAN NECESSITIES
Abstract
A communication device arranged for transmitting information from a medicament delivery device is presented. The communication device includes at least one rotation detection arrangement, the at least one rotation detection arrangement being configured to detect a rotation of at least one physical part of the medicament delivery device. The communication device also includes at least one determination unit configured to determine information related to a medicament delivery performed by the medicament delivery device. The communication device further includes at least one activation unit configured to activate the at least one determination unit based on the detected rotation. Also, the communication device includes at least one transmission unit configured to provide a wireless transmission of the information to an external receiving device.
Claims
1-15. (canceled)
16. A communication device arranged for transmitting information from a medicament delivery device having a longitudinal axis, where the communication device comprises: a printed circuit board configured to determine information related to a medicament delivery performed by the medicament delivery device; a switch that rotates relative to the longitudinal axis and that is connected to the printed circuit board, where the switch detects a rotation of a physical part of the medicament delivery device; a non-rotating stationary wall positioned within the communication device or within a housing of the medicament delivery device, where during rotation the switch moves from a non-aligned position relative to the wall to an aligned position such that when in the aligned position the switch and the printed circuit board are activated; and a transmitter that provides a wireless transmission of the information to an external receiving device, wherein the switch is rotated by the rotation of the rotating physical part of the medicament delivery device relative to the wall.
17. The communication device of claim 16, wherein the switch projects distally relative to the printed circuit board.
18. The communication device of claim 16, wherein the wall projects transversally relative to the longitudinal axis.
19. The communication device of claim 16, wherein the switch is an electromagnetic switch.
20. The communication device of claim 19, wherein a magnet is fixed to the wall.
21. The communication device of claim 20, wherein rotation of the printed circuit board causes activation of the electromagnetic switch when the switch moves from the non-aligned position to the aligned position such that the switch adjacent to the magnet.
22. The communication device of claim 16, wherein the printed circuit board is configured to determine the information based on one revolution of the rotating physical part.
23. The communication device of claim 22, wherein the one revolution is determined by the switch when moved to the aligned position.
24. The communication device as claimed in claim 16, wherein the printed circuit board is configured to determine the information based on preconfigured data related to the medicament delivery, the data including one or more in the group of: an identification number for the medicament delivery device; an identification number for a medicament delivered by the medicament delivery device; an identification number for a patient using the medicament delivery device; and an elapsed time since a delivery of a medicament occurred.
25. The communication device as claimed in claim 16, wherein the printed circuit board is configured to determine the information based on measured data related to the medicament delivery, the data including one or more in the group of: an identification number for the medicament delivery device; an identification number for a medicament delivered by the medicament delivery device; an identification number for a patient using the medicament delivery device; and an elapsed time since a delivery of a medicament occurred.
26. The communication device as claimed in claim 16, wherein the communication device further includes an indication unit configured to provide an indication of that the medicament delivery is performed.
27. The communication device as claimed in claim 26, wherein the indication is provided during the medicament delivery and also during a predetermined time period after the medicament delivery has ended.
28. The communication device as claimed in claim 16, wherein the communication device further comprises an indication unit including one or more in the group of: a light source configured to emit light as an indication; a light guide configured to guide light being emitted by the light source as an indication; a mechanical audible indication source configured to be compressed and released by the rotation, thereby emitting an audible indication; and a mechanical tactile indication source configured to be compressed and released by the rotation, thereby providing a tactile indication.
29. The communication device as claimed in claim 16, wherein the communication device is included within a housing of the medicament delivery device.
30. The communication device as claimed in claim 16, wherein the communication device is included in an external unit, the external unit being releasably attachable to the medicament delivery device.
31. A communication device arranged for transmitting information from a medicament delivery device having a longitudinal axis, where the communication device comprises: a rotating printed circuit board configured to determine information related to a medicament delivery performed by the medicament delivery device; a switch connected to the printed circuit board such that the switch projects distally from the printed circuit board and that rotates with the printed circuit board relative to the longitudinal axis, where the switch detects a rotation of a physical part of the medicament delivery device; a non-rotating stationary wall positioned within the communication device or within a housing of the medicament delivery device, where during rotation the switch moves from a non-aligned position relative to the wall to an aligned position such that when in the aligned position the switch and the printed circuit board are activated; and a transmitter that provides a wireless transmission of the information to an external receiving device, wherein the switch is rotated by the rotation of the rotating physical part of the medicament delivery device relative to the wall.
32. The communication device of claim 3, wherein the wall projects transversally relative to the longitudinal axis.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0046] Embodiments of the invention are described in more detail with reference to attached drawings illustrating examples of embodiments of the invention in which:
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DETAILED DESCRIPTION OF INVENTION
[0057] In the following, the present invention is often exemplified as implemented in an injection device. The present invention can, however, be implemented in essentially all kinds of medicament delivery devices that include at least one physical part which rotates when the medicament is delivered to the patient, and is thus not restricted to implementation in injection devices.
[0058] In
[0059]
[0060] In this document, when the term “distal” is used, this refers to the direction pointing away from the dose delivery site. When the term “distal part/end” is used, this refers to the part/end of the delivery device, or the parts/ends of the members thereof, which is/are located furthest away from the dose delivery site. Correspondingly, when the term “proximal” is used, this refers to the direction pointing to the dose delivery site. When the term “proximal part/end” is used, this refers to the part/end of the delivery device, or the parts/ends of the members thereof, which is/are located closest to the dose delivery site.
[0061] As shown in
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[0065] The medicament delivery device 1 includes a needle 13 of a medicament container 12 being covered by a rigid needle shield. A plunger driver 50 is initially, i.e. before delivery, rotationally locked to a plunger drive locking member 70, but is slidable in axial direction in relation to plunger drive locking member 70. The plunger rod 60 may comprise a threaded structure as well as at least one longitudinal groove. At the proximal end, the plunger rod 60 comprises a plunger rod tip 62 onto which a spinner element 65 can be attached by snap fit. The spinner element 65 acts on a stopper in the medicament container 12 in order to deliver the medicament.
[0066] In the initial stage of the medicament delivery device 1, i.e. prior to its use, a proximal part of the plunger rod 60 is received in the central opening of the container driver 32. However, once the plunger drive locking member 70 is free to rotate, which happens when the delivery starts, the plunger driver 50 and the plunger rod 60 also start to rotate, caused by a first spring 40.
[0067] A central opening of the container driver 32 comprises a threaded structure that engages with the threads of the plunger rod 60. Thus, the threaded proximal section of the plunger rod 60 is screw threaded in the interior of the container driver 32. Due to this threaded engagement, rotation of the plunger rod 60 upon use of the medicament delivery device results in an axial displacement of the plunger rod 60 towards the proximal end of the medicament delivery device. In other words, the plunger rod 60 is rotated by the thread engagement in the direction of the medicament container 12, and causes the stopper in the medicament container 12 and in abutment with spinner 65 to move towards the proximal end of the medicament container 12 in order to expel medicament through the injection needle 13.
[0068] When the plunger rod 60 is proximally advanced, during the delivery, the indicator 80 and the indicator rod 82, being part of the indicator assembly, are forced distally. The plunger rod 60 is then also rotationally locked to the plunger driver 50 but may axially slide along ribs of the plunger driver 50. The plunger driver 50 is connected to the inner end of the first spring 40, whereby a force applied to the plunger driver 50 by the first spring 40 is transmitted to the plunger rod 60. Thus, the plunger driver 50 is rotated by the first spring 40 when the medicament is expelled/injected.
[0069] The torque force of the first spring 40 will continue to drive the plunger rod 60 towards the proximal end of the medicament delivery device 1 pressing the stopper to expel medicament through the needle 13. The container driver 32 slides over along the plunger rod 60 as the plunger rod 60 continues to move towards the proximal end of the device. The delivery is completed when the stopper is at the proximal end of the medicament container 12.
[0070] When the plunger rod 60 is fully rotated towards the proximal end of medicament delivery device 1, a second spring (not shown) coaxially arranged with the indicator rod 82 causes the indicator assembly to move distally until the indicator 80 contacts the distal front surface of the distal housing part 3. This causes the distal protrusion of the indicator 80 to project through an indicator opening 83 provided in the centre of the distal wall of the distal housing part 3. This provides a visible and tactile indication to the user that the complete dose has been expelled.
[0071] In
[0072] As mentioned above, the communication device according to the present invention may be implemented in a large number of different medicament delivery devices. The medicament delivery device illustrated in
[0073]
[0074] According to an aspect of the present invention, a communication device arranged for transmitting information from a medicament delivery device is presented.
[0075] The communication device includes at least one rotation detection arrangement, the at least one rotation detection arrangement being configured to detect a rotation of at least one physical part of the medicament delivery device. As is described above and below, a number of physical parts of the medicament delivery device, such as the plunger 60, the plunger driver 50 and/or the signaling element 182, are rotated when a medicament delivery is performed by the medicament delivery device. Thus, a detected rotation of one of these parts can be used as a clear indication of that a medicament delivery is taking place.
[0076] The communication device also includes at least one determination unit configured to determine information related to a medicament delivery performed by the medicament delivery device. The information can be based on preconfigured data and/or measured data related to the medicament delivery. Such data may include e.g. an identification number identifying the medicament delivery device, an identification number identifying a medicament/drug being delivered by the medicament delivery device, an identification number identifying a patient using the medicament delivery device, and/or an elapsed period of time since a delivery of a medicament/drug occurred.
[0077] The communication device further includes at least one activation unit configured to activate the at least one determination unit based on the detected rotation. Thus, the at least one determination unit will be activated when a medicament delivery is performed.
[0078] Also, the communication device includes at least one transmission unit configured to provide a wireless transmission of the information to an external receiving device. The transmission may be performed in essentially any format being suitable for transfer of data wirelessly, such as according to for example a Bluetooth transmission protocol or another similar short range transmission protocols, or according to a cellular communication protocol of some kind. The external receiving device can be essentially any device including a receiver, such as for example be a portable device, such as a tablet, a smartphone or a laptop, or a stationary device, such as a stationary computer, a server equipment, a router equipment or a network hub.
[0079] According to different embodiments of the present invention, the at least one activation unit is configured to activate the at least one determination unit and/or the at least one transmission unit based on the detected rotation. According to an embodiment, the whole communication device is activated by the at least one activation unit when a rotation is detected.
[0080] According to an embodiment of the present invention, the at least one rotation detection arrangement includes at least one mechanical switch 301 configured to be compressed, and subsequently released, by the rotation of the at least one physical part during the medicament delivery.
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[0082] The communication device 300 illustrated in
[0083] The communication device 300 can be implemented within the housing of the medicament delivery device, e.g. by at least partly exchanging the indicator assembly 180 at the distal end of the medicament delivery device 1 with the communication device covered by a semi-transparent lid/indicator 320, as is shown in
[0084] According to an embodiment, the at least one clock 311, such as e.g. a clock crystal device, which can be mounted on the PCB 302, can be configured to count a relative time related to the delivery of drugs. Thus, the at least one clock 311 can then count the elapsed period of time from the medicament delivery, such as from the start of the medicament delivery, i.e. from the point in time when the determination unit was activated. Hereby, the clock 311 may be in an off mode until the determination unit is activated, which saves battery power.
[0085] According to an embodiment, the transmission unit 304 is configured to create a connection between the communication device and the external receiving device, e.g. a smartphone, essentially directly at the activation of the communication device 300. The transmission unit 304 can also, as described in this document, be configured to transmit various information from the communication device 300 to the external receiving device. Hereby, interactive information may be presented by the smartphone during the medicament delivery.
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[0089] Correspondingly to the mechanical switch 301, when the physical parts, such as e.g. the plunger driver 50, starts rotating, the electromagnetic switch 321 is also brought to rotation since it is attached to the rotating PCB. Hereby, the switch electromagnetic 321 is activated, whereby the rotation is detected. The at least one activation unit is configured to then activate the at least one determination unit based on the detected rotation.
[0090] According to an embodiment of the present invention, shown in
[0091] As described above, the rotation of at least one physical part 50, 60, 182 caused by the activation of the medicament delivery device rotates the PCB 302, whereby the two contact points 502, 503 are withdrawn from the location on the medicament delivery device, e.g. the activation wall 313, where the at least one insulating strip 501 is fixed. Thus, by the rotation, a short circuit is created between the two contact points 502, 503 when the at least one insulating strip 501 is removed from between the two contact points 502, 503 by the rotation. This is illustrated in
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[0093] These contact/glide surfaces facilitate stable and low-frictional rotation of the PCB 302.
[0094] According to some embodiments of the present invention, shown in
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[0098] According to an embodiment of the present invention, the at least one indication being provided during the medicament delivery, e.g. the above described visual, audible and/or tactile indications exemplified in
[0099] According to an embodiment of the present invention, the at least one rotation detection arrangement of the communication device 300 includes at least one vibration sensor 312 (shown in
[0100] According to an embodiment of the present invention, the communication device 800 is included in an external unit 880, as shown in
[0101] According to an embodiment, the housing 851 can be mechanically keyed to a specific medicament delivery device. The housing 851 may then be provided with a specific surface, including e.g. recesses/cavities/notches 855 corresponding to a surface pattern, e.g. including protrusions 856 (see
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[0103] The communication device 800 illustrated in
[0104] According to an embodiment, the at least one clock 811, such as e.g. a clock crystal device, which can be mounted on the at least one PCB 802, can be configured to count a relative time related to the delivery of drugs. Thus, the at least one clock 811 can then count the elapsed period of time from the medicament delivery and/or from activation of the communication device 800. Hereby, the clock 811 may be in an off mode until the at least one determination unit is activated, which saves battery power.
[0105] According to an embodiment, the communication device 800 includes a transmission unit 804 being configured to creating a connection between the communication device and the external receiving device when the at least one determination unit is activated. The transmission unit 804 is also configured to transmit various information from the communication device 800 to the external receiving device. Hereby, interactive information may be presented e.g. by a smartphone during the medicament delivery. As stated above for transmission unit 304, essentially any suitable transmission format can be used for the transmission.
[0106] According to an embodiment, the communication device 800 includes an attachment switch 830, which is configured to be activated when the communication device is releasably attached to the medicament delivery device. Thus, the attachment switch is activated when the communication device 800 is mounted on the medicament delivery device 1, e.g. by mounting it on the distal end of the medicament delivery device 1 by pressing it against the distal end, thereby enabling activation of the communication device 800. Hereby, one or more parts of the communication device 300, such as e.g. the at least one rotation detection arrangement and/or the at least one transmission unit, may be activated by the attachment switch.
[0107] According to an embodiment, the communication device 800 includes a rotator 840 being configured to be rotated by the delivery rotation of at least one physical part 50, 60, 182 of the medicament delivery device 1, as is described below.
[0108] According to an embodiment of the present invention, the at least one rotation detection arrangement of the communication device 800 includes at least one mechanical switch 801, such as e.g. an injection switch, configured to be compressed by the rotation, and subsequently released. As is shown in
[0109] According to an embodiment, the rotator 840 of the communication device 800 is connected to the indicator assembly 180, e.g. to the indicator 80, the indicator rod 82 and/or the signaling element 182 being part of the indicator assembly 180. The connection can be made e.g. by a squared shape design of a male part 841 of the rotator 840, fitting into a corresponding female squared shaped part 184 of the indicator assembly 180. Thus, when at least one part of the indicator assembly 180 rotates during the medicament delivery, the rotator 840 also rotates. Thereby, the at least one mechanical switch 801 is activated by the rotation. According to an embodiment, when both the attachment switch 830 and the mechanical switch/injection switch 801 are activated, the at least one determination unit is activated.
[0110] According to an embodiment shown in
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[0112] According to an embodiment, the at least one magnet 822 can be attached on the inner and/or outer surface of the signaling element 182, and the communication device 800 is attached as an external unit 880 on the distal end of the medicament delivery device 1. Hereby, very few, or even no, changes would have to be done inside the actual medicament delivery device 1, which facilitates an implementation adding low costs and complexity to the device.
[0113] According to an embodiment, the at least one rotation detection arrangement of the communication device 800 includes at least one vibration sensor 812 (shown in
[0114] According to an embodiment of the present invention, at least one indication is provided during the medicament delivery, in form of e.g. visual, audible and/or tactile indications, as mentioned above. The indication unit is in
[0115] The indication unit can be configured to provide the indication during a predetermined time period after the delivery has ended. This is possible since the communication device 800 is provided with a source of energy, such as a battery 806, which can be used for providing this prolonged indication, e.g. by letting a LED 809 shine through the light guide 825, also after the medicament has been delivered. When the medicament delivery device 1 is pressed against the skin of the patient both during the delivery time, i.e. during the rotation/delivery, and during the predetermined time period after the rotation/delivery, the medicament being delivered by the medicament delivery device 1 has enough time to be absorbed by the tissue of the patient. As described above, the predetermined time period can be set, e.g. depending on the type of drug being delivered.
[0116] As mentioned above, the communication device 300, 800 described above can, according to an embodiment, include at least one determination unit configured to determine information related to a medicament delivery performed by the medicament delivery device. The information can be based on preconfigured data and/or measured data related to the medicament delivery. Such data may include e.g. an identification number identifying the medicament delivery device, an identification number identifying a medicament/drug being delivered by the medicament delivery device, an identification number identifying a patient using the medicament delivery device and/or an elapsed time since a delivery of a medicament/drug occurred.
[0117] According to an embodiment, the communication device 300, 800 described above can also be configured to determine information based on a number of revolutions of the at least one rotating physical part 50, 60, 182 of the medicament delivery device. The number of revolutions is here determined by the at least one rotation detection arrangement described above. The number of revolutions can then be included in the information transmitted to the external receiver from the communication device 300, 800.
[0118] The at least one determination unit is, according to an embodiment, also configured to compare the measured/determined number of revolutions with a correct number of revolutions being predetermined for the medicament delivery device 1. Alternatively, the external receiving device is configured to make the comparison, i.e. to compare the measured/determined number of revolutions with a correct number of revolutions being predetermined for the medicament delivery device 1. Normally, the correct number of revolutions needed for delivering the medicament to the patient is known, or can be calculated. Hereby, a problem occurring during the delivery and/or a malfunction of the communication device 800 can easily be detected simply by counting the number of revolutions actually being made for the delivery.
[0119] The present invention is not limited to the above described embodiments. Instead, the present invention relates to, and encompasses all different embodiments being included within the scope of the independent claims.